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PDF LH1519 Data sheet ( Hoja de datos )

Número de pieza LH1519
Descripción (LH1500 - LH1550) High Voltage Optically Coupled Solid
Fabricantes Siemens 
Logotipo Siemens Logotipo



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FEATURES
3750 Vrms or 5300 Vrms I/O isolation
Current-limit protection built-in
Linear ac/dc operation
High-reliability monolithic receptor
Extremely low leakage current (pA)
High contact off-impedance (GW)
Low power consumption (1 mW—12 mW)
Very low switch offset (typically 0.1 mV)
Logic compatible
Clean, bounce-free switching
Built-in 1 Form C break-before-make
High surge capability
Insensitive to dv/dt
Surface mountable
Compatible with UL1459 and FCC 68.302
UL recognized
CSA certified
BABT certificate of recognition to BS6301
BENEFITS
Long life
Maintenance free
Current-limit SSRs can sustain
repeated faults without damage
Minimizes drive circuitry
Noiseless
Immune to shock
Immune to environmental hazards
such as salt, dirt, and humidity
No arcing
No mounting restrictions
Preapproved for DAA applications
High reliability
Easily configured in series or in parallel
for increased voltage or current
High Voltage Solid State Relays
General Information
DESCRIPTION
Siemens Solid State Relays (SSRs) are miniature, optically-coupled relays
with high-voltage MOSFET outputs. The relays are capable of switching ac
or dc loads from as little as nanovolts to hundreds of volts. Likewise, the
relays can switch currents in the range of nanoamps to hundreds of milli-
amps. The MOSFET switches are ideal for small signal switching and are
primarily suited for dc or audio frequency applications.
Siemens offers integrated current limiting on many of its relays. If load
current through the relay exceeds the rated value, the relay clamps the
current at a predefined value. If the excessive load current persists, the
limiting circuit has a foldback feature to minimize relay power dissipation.
The current-limit circuit has a multitude of uses. It can be used in tele-
phony to clamp excessive currents emanating from lightning strikes and/
or power-main crosses or in instrumentation and industrial application to
squelch transients from reactive loads. The current-limit circuit also
provides short-circuit protection in power-feed applications.
The SSRs feature a monolithic output die that minimizes wire bonds and
permits easy integration of high-performance circuits such as current
limiting in normally-open switches. The output die contains all the neces-
sary circuitry to perform a relay function, including the photodiode
receptor array, turn-on and turn-off control circuitry, and the MOSFET
switches. The optically-coupled input is controlled by a highly efficient
GaAlAs infrared LED.
Siemens SSRs are available in a 6- or 8-pin through-hole DIP or in gull-
wing surface-mount packages. Some parts are also offered in 8- or 18-pin
small-outline packages (SOPs). The SOPs are size and height compatible
with PCMCIA Type 2 cards. A 0.4 mm distance through insulation spacing
is also available on “H” suffix coded parts. Refer to the Parts Coding
section for a more in-depth description of these parts.
Siemens Microelectronics, Inc. • Optoelectronics Division
www.smi.siemens.com/opto/
1 of 20
October 1998

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LH1519 pdf
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Wiring Diagrams
ac/dc OUTPUT
CONFIGURATIONS
SINGLE LOAD
TWO LOADS
dc OUTPUT
CONFIGURATIONS
SINGLE LOAD
— REDUCED RON
— INCREASED LOAD
CURRENT
— REDUNDANCY
1
2
3
1
2
3
4
1
2
3
6 LOAD
5 NC
4 LOAD
8 LOAD 1
7 LOAD 1
6 LOAD 2
5 LOAD 2
6 + LOAD
5
– LOAD
4
1 8 LOAD
2
6, 7 NC SOP
3
4 5 LOAD
SOP
1
2
3
4
6
7
8
9
18 LOAD 1
17 NC
16 NC
15 LOAD 1
13 LOAD 2
12 NC
11 NC
10 LOAD 2
SINGLE LOAD
TWO LOADS
16
+ LOAD
25
– LOAD
34
1
2
3
1 6 + LOAD 1
2 5 –LOAD COMMON
3 4 + LOAD 2
6
5
– LOAD
4 + LOAD
Siemens Microelectronics, Inc. • Optoelectronics Division
www.smi.siemens.com/opto/
5 of 20
Wiiring Diagrams
October 1998

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LH1519 arduino
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Electrical Characteristics TA=25°C
Minimum and maximum values are testing requirements.
Typical values are characteristics of the device and are the
result of engineering evaluations. Typical values are for infor-
mation purposes only and are not part of the testing require-
ments.
Parameter
Symbol Test Conditions Values
LED Forward Current IFon
for Switch Turn-on
I
N
P
LED Forward Current IFoff
for Switch Turn-off
U
T
LED Forward Voltage VF
ON-resistance
ac/dc
Pin 4 (±) to 6 (±)
dc
Pin 4, 6 (+) to 5 (±)
OFF-resistance
RON
ROFF
ON-state Voltage
Current Limit
O ac/dc
ILMT
U Pin 4 (±) to 6 (±)
T dc
P Pin 4, 6 (+) to 5 (±)
U
T
Off-state
Leakage Current
Output Capacitance —
Pin 4 to 6
Switch Offset
T Input/Output Capaci-
R tance
A
N Turn-on Time
S
F
E Turn-off Time
R
* IF=5 mA.
† IF=10 mA.
‡ IL=100 mA, t=10 ms
CISO
ton
toff
IL=100 mA
t=10 ms
VL
IF=10 mA
IF=5 mA
IL=50 mA
IF=5 mA
IL=100 mA
IF=0 mA
VL=±100 V
IL=1 mA
IL=90 mA
t=10 ms
IF=5 mA
t=5 ms
VL
IF=5 mA, VL=4 V
t=5 ms
IF=0 mA
VL=±100 V
IF=0 mA
VL
IF=0 mA
VL=1 V
IF=0 mA
VL = 50 V
IF=5 mA
VISO=1 V
IF=5 mA
IL=50 mA
IF=5 mA
IL=50 mA
Min
Typ
Max
Min
Typ
Max
±
Min
Typ
Max
Min
Typ
Max
Min
Typ
Max
Min
Typ
Max
Min
Typ
Max
Min
Typ
Max
Min
Typ
Max
±
Min
Typ
Max
Min
Typ
Max
Min
Typ
Max
±
Min
Typ
Max
Min
Typ
Max
Min
Typ
Max
Min
Typ
Max
Min
Typ
Max
Min
Typ
Max
Siemens Microelectronics, Inc. • Optoelectronics Division
www.smi.siemens.com/opto/
11 of 20
LH1530
1.0
2.0
0.2
0.9
300
1.15
1.26
1.45
12
18
25
3.00
5.00
6.25
0.5
5000
0.1
200
1.0
350
55
10
0.15
0.8
0.5†
1.0†
0.5†
1†
LH1535/
LH1540
1.0
2.0
0.2
0.9
350/300
1.15
1.26
1.45
12
20
25
3.00
5.00
6.25
0.5
5000
170
210
250
6
0.32
200
1.0
400/350
55
10
0.15
0.8
1.2
2.0
0.5
2.0
LH1541
0.6
2.0
0.1
0.5
150
1.10*
1.19*
1.45*
70
110
160
0.5
10000
0.4
200
1.0
200
4.8
3.6
0.15
0.8
0.12
0.25
0.03
0.25
LH1550
1.2
2.5
0.01
1.100
300
1.10*
1.19*
1.45*
25‡
37‡
50‡
0.5
5000
150
200
270
13
0.3
200
1.0
350
40
8
0.15
0.8
1.4
3.0
0.5
3.0
Units
mA
mA
mA
mA
mA
mA
V
V
V
V
W
W
W
W
W
W
GW
GW
GW
V
V
V
V
V
V
mA
mA
mA
V
mA
mA
mA
nA
nA
nA
mA
mA
mA
V
pF
pF
pF
pF
pF
pF
V
V
V
pF
pF
pF
ms
ms
ms
ms
ms
ms
LH1530, LH1535, LH1540, LH1541, LH1550
October 1998

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